Overview of Нитроксолин
| Property | Description |
|---|---|
| Active ingredient | Nitroxoline (5-nitro-8-hydroxyquinoline) |
| Form | Tablets, soft capsules |
| Pharmacological class | Antibacterial agent, Uroantiseptic |
| Common use | Combating microbial infections in the urinary tract |
| Origin | Synthetic 8-hydroxyquinoline derivative |
Classification and Identity of Nitroxoline
Нитроксолин is a synthetic, single-substance antimicrobial agent that holds the official classification of J01XX07 within the WHO-ATC Classification System. It is recognized primarily as a uroantiseptic for systemic administration in its solid oral form. The active ingredient, Nitroxoline (INN), belongs to the distinct chemical group of 8-hydroxyquinoline derivatives, setting it apart from more contemporary antibiotic families. Despite being an older compound, Nitroxoline demonstrates potent broad-spectrum antimicrobial agent activity against various bacteria, including Escherichia coli. The INN-level differentiation of Nitroxoline lies in its unique structure, which is clinically recognized for exhibiting a low degree of cross-resistance with other major classes of antibacterial drugs.
Composition and Available Form
The drug's composition relies entirely on the therapeutic efficacy of its sole active ingredient, Nitroxoline, which has the chemical formula C9H6N2O3. This substance is commercially available as an oral antibiotic in the form of tablets and soft capsules. The unique structural nature of this hydroxyquinoline derivative, which is often considered unrelated to other standard drug classes, contributes to its specific mechanism of action.
General Purpose and Action Domain
The general purpose of Нитроксолин is to suppress microbial growth, with a primary domain of action within the urinary system, leveraging its uroantiseptic property. This medicine is typically used in situations where suppression of microbial colonization in the lower urinary tract is required. Its mechanism involves chelation, where it binds to essential metallic cations like Fe^2+ and Zn^2+, which stops pathogens from synthesizing genetic material and induces a bacteriostatic effect. Nitroxoline also has the property to reduce the formation of and induce the dispersal of biofilms, a capability particularly beneficial for combating persistent infections.


